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开发一种使用基于酸的疏水性低共熔溶剂的分析方法,用于运动营养补充剂中重金属的萃取和预富集,随后进行石墨炉原子吸收光谱分析。

Development of an analytical procedure using acid-based hydrophobic deep eutectic solvent for the extraction and preconcentration of heavy metals in sport supplements followed by GFAAS analysis.

作者信息

Luo Xiaoyuan, Du Xiru, Chen Shiliang, Liu Yeyang

机构信息

School of Liberal Arts, Shenzhen City Polytechnic, Shenzhen 518000, Guangdong, China.

College Sport Arts, Guangzhou Sport University, Guangzhou 510610, Guangdong, China.

出版信息

Anal Methods. 2025 Aug 15;17(32):6470-6480. doi: 10.1039/d5ay00703h.

Abstract

The excessive use of sports supplements by athletes and the possibility of the presence of toxic metals in these supplements has become a serious concern. Because the accumulation of these metals in body tissues threatens human health in the long term. In the present research work, microwave-assisted extraction (MAE) combined with acid-based deep eutectic solvents (DESs) was developed for the extraction and preconcentration of lead (Pb), cadmium (Cd) and mercury (Hg) in sport supplements. The method was combined with graphite furnace atomic absorption spectroscopy (GFAAS) for sensitive and efficient detection. Acid-based DESs were synthesized from organic acids having 6 to 10 carbon atoms in combination with thymol under appropriate conditions. The synthesized DESs were used as the extraction solvent to extract metal ions from sports supplements. Diethyl dithiophosphoric acid (DDTP) was chosen as the chelating agent due to its acidic properties and high ability to form complexes with the desired metal ions. Some factors affecting the extraction and enrichment were studied, such as DES type, molar ratio of DES components, DES volume, sample solution pH, vortex time, salt addition and interference ions. Under the best conditions, the enrichment factors ranged from 212 to 284, while the preconcentration factors varied between 450 and 610. The calibration curves showed good linearity between 0.05 and 300 μg kg, with detection limits ranging from 0.02 to 0.10 μg kg. RSDs for inter-day and intra-day precision for 1.0 μg L of Hg and 0.20 μg L of Cd and Pb were in the range of 2.7-4.4% ( = 7) and 4.5-6.3% ( = 7), respectively. The accuracy of this method was confirmed by obtaining recoveries of spiked real samples. The method was also validated by analyzing two certified reference materials (CRMs).

摘要

运动员过度使用运动补剂以及这些补剂中可能存在有毒金属已成为一个严重问题。因为这些金属在人体组织中的积累长期威胁人类健康。在本研究工作中,开发了微波辅助萃取(MAE)与酸基深共熔溶剂(DESs)相结合的方法,用于运动补剂中铅(Pb)、镉(Cd)和汞(Hg)的萃取和预富集。该方法与石墨炉原子吸收光谱法(GFAAS)相结合,用于灵敏且高效的检测。在适当条件下,由含6至10个碳原子的有机酸与百里酚合成酸基DESs。合成的DESs用作萃取溶剂,从运动补剂中萃取金属离子。由于二乙二硫代磷酸(DDTP)的酸性性质及其与所需金属离子形成络合物的高能力,选择其作为螯合剂。研究了一些影响萃取和富集的因素,如DES类型、DES组分的摩尔比、DES体积、样品溶液pH值、涡旋时间、加盐量和干扰离子。在最佳条件下,富集因子范围为212至284,而预富集因子在450至610之间变化。校准曲线在0.05至300 μg/kg之间显示出良好的线性,检测限范围为0.02至0.10 μg/kg。对于1.0 μg/L的Hg以及0.20 μg/L的Cd和Pb,日间和日内精密度的相对标准偏差(RSD)分别在2.7 - 至4.4%(n = 7)和4.5 - 至6.3%(n = 7)范围内。通过加标实际样品的回收率证实了该方法的准确性。该方法还通过分析两种有证标准物质(CRM)进行了验证。

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